Department of Botany & Microbiology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.
Department of Biology, College of Science and Humanities in Al-Kharj, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.
Ecotoxicol Environ Saf. 2021 Apr 15;213:112027. doi: 10.1016/j.ecoenv.2021.112027. Epub 2021 Feb 9.
The unregulated deposition of metal-based nanoparticles in terrestrial ecosystems particularly in agricultural systems has alarmingly threatened the sustainability of the environment and diversity of beneficial microbial populations such as soil bacteria and fungi. This occurs due to the poor treatment of biosolids during wastewater treatment and their application in agricultural fields to enhance the fertility of soils. Continuous deposition, low biodegradability, and longer persistence of metal nanoparticles in soils adversely impact the population of soil beneficial bacteria and fungi. The current literature suggests the toxic outcome of nanoparticle-fungi and nanoparticle-bacteria interactions based on various toxicity endpoints. Therefore, due to the extreme importance of beneficial soil bacteria and fungi for soil fertility and plant growth, this review summarizes the production, application, release of metal nanoparticles in the soil system and their impact on various soil microbes specifically plant growth-promoting rhizobacteria, cellular toxicity and impact of nanoparticles on bioactive molecule production by microbes, destructive nanoparticle impact on unicellular, mycorrhizal, and cellulose/lignin degrading fungi. This review also highlights the molecular alterations in fungi and bacteria-induced by nanoparticles and suggests a plausible toxicity mechanism. This review advances the understanding of the nano-toxicity aspect as a common outcome of nanoparticles and fungi/bacteria interactions.
金属基纳米粒子在陆地生态系统中的无管制沉积,特别是在农业系统中,对环境的可持续性和有益微生物种群(如土壤细菌和真菌)的多样性构成了惊人的威胁。这是由于在废水处理过程中对生物固体的处理不当,以及将其应用于农业领域以提高土壤肥力。金属纳米粒子在土壤中的持续沉积、低生物降解性和更长的持久性,对土壤有益细菌和真菌的种群产生不利影响。目前的文献表明,基于各种毒性终点,纳米颗粒-真菌和纳米颗粒-细菌相互作用会产生毒性后果。因此,由于有益土壤细菌和真菌对土壤肥力和植物生长至关重要,因此,本综述总结了金属纳米粒子在土壤系统中的产生、应用和释放及其对各种土壤微生物的影响,特别是植物促生根际细菌、细胞毒性以及纳米颗粒对微生物生物活性分子产生的影响、纳米颗粒对单细胞、菌根和纤维素/木质素降解真菌的破坏性影响。本综述还强调了纳米颗粒诱导的真菌和细菌的分子改变,并提出了一种合理的毒性机制。本综述增进了对纳米毒性方面的理解,即纳米颗粒和真菌/细菌相互作用的共同后果。